Cloud Resolving Modeling of the ARM Summer 1997 IOP: Model Formulation, Results, Uncertainties, and Sensitivities
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- 1 February 2003
- journal article
- Published by American Meteorological Society in Journal of the Atmospheric Sciences
- Vol. 60 (4) , 607-625
- https://doi.org/10.1175/1520-0469(2003)060<0607:crmota>2.0.co;2
Abstract
A new three-dimensional cloud resolving model (CRM) has been developed to study the statistical properties of cumulus convection. The model was applied to simulate a 28-day evolution of clouds over the Atmospheric Radiation Measurement Program (ARM) Southern Great Plains site during the summer 1997 Intensive Observation Period. The model was forced by the large-scale advective tendencies and surface fluxes derived from the observations. The sensitivity of the results to the domain dimensionality and size, horizontal grid resolution, and parameterization of microphysics has been tested. In addition, the sensitivity to perturbed initial conditions has also been tested using a 20-member ensemble of runs. The model captures rather well the observed temporal evolution of the precipitable water and precipitation rate, although it severely underestimates the shaded cloud fraction possibly because of an inability to account for the lateral advection of clouds over the ARM site. The ensemble runs reveal t... Abstract A new three-dimensional cloud resolving model (CRM) has been developed to study the statistical properties of cumulus convection. The model was applied to simulate a 28-day evolution of clouds over the Atmospheric Radiation Measurement Program (ARM) Southern Great Plains site during the summer 1997 Intensive Observation Period. The model was forced by the large-scale advective tendencies and surface fluxes derived from the observations. The sensitivity of the results to the domain dimensionality and size, horizontal grid resolution, and parameterization of microphysics has been tested. In addition, the sensitivity to perturbed initial conditions has also been tested using a 20-member ensemble of runs. The model captures rather well the observed temporal evolution of the precipitable water and precipitation rate, although it severely underestimates the shaded cloud fraction possibly because of an inability to account for the lateral advection of clouds over the ARM site. The ensemble runs reveal t...Keywords
This publication has 32 references indexed in Scilit:
- A comparison of single column model simulations of summertime midlatitude continental convectionJournal of Geophysical Research: Atmospheres, 2000
- Assessment of Solution Uncertainties in Single-Column Modeling FrameworksJournal of Climate, 2000
- A Large Eddy Simulation Model with Explicit Microphysics: Validation against Aircraft Observations of a Stratocumulus-Topped Boundary LayerJournal of the Atmospheric Sciences, 1999
- Cloud Resolving Modeling of Tropical Cloud Systems during Phase III of GATE. Part III: Effects of Cloud MicrophysicsJournal of the Atmospheric Sciences, 1999
- Three-Dimensional Cloud-System Modeling of GATE ConvectionJournal of the Atmospheric Sciences, 1999
- Cloud-Resolving Modeling of Cloud Systems during Phase III of GATE. Part II: Effects of Resolution and the Third Spatial DimensionJournal of the Atmospheric Sciences, 1998
- Toward Cloud Resolving Modeling of Large-Scale Tropical Circulations: A Simple Cloud Microphysics ParameterizationJournal of the Atmospheric Sciences, 1998
- A numerical study of the parametrization of deep tropical convectionQuarterly Journal of the Royal Meteorological Society, 1989
- A new convective adjustment scheme. Part II: Single column tests using GATE wave, BOMEX, ATEX and arctic air‐mass data setsQuarterly Journal of the Royal Meteorological Society, 1986
- Stratocumulus-capped mixed layers derived from a three-dimensional modelBoundary-Layer Meteorology, 1980